期刊文献+

Effect of background electrolytes on the adsorption of nitroaromatic compounds onto bentonite 被引量:5

Effect of background electrolytes on the adsorption of nitroaromatic compounds onto bentonite
在线阅读 下载PDF
导出
摘要 To further elucidate interaction of nitroaromatic compounds with mineral surface, the sorption of m-dinitrobenzene (m-DNB) and nitrobenzene to original bentonite in aqueous solution containing different electrolytes (i.e., KCl, NH4Cl, CaCl2 and Tetramethylammonium bromide (TMAB)) was studied. The sorption of m-DNB was greatly enhanced with the presence of KCl and NH4Cl, while little influence was observed with CaCl2 and TMAB, following the order of KCl 〉 NH4Cl 〉〉 TMAB, CaCl2, or DI water. For nitrobenzene, sorption enhancement only occurred at high nitrobenzene concentrations in the presence of KCl, and the solute equilibrium concentration at inflexion point was lowered with increasing KCl concentration. These sorption enhancements were significantly promoted with the increase of electrolyte concentration. The salting-out effect is insufficient to account for the sorption enhancement by original bentonite with increasing KCI or NH4Cl concentration. X-ray diffraction patterns of bentonite suspensions indicated that the sorption enhancement of m-DNB was attributed to the intercalation of K^+ or NH4^+ into bentonite interlayer and then dehydration with m-DNB to form inner-sphere complexes, which caused previously expanded bentonite interlayers to collapse in aqueous suspension, thus further enhanced the interaction of phenyl with siloxane surface. In comparison, the sorption enhancement of NB is attributed to the formation of outer-sphere complexes with K^+ at high solute-loadings (〉 20(0-400 mg/kg). The sorption of m-DNB to initially modified TMA^+-bentonite and K^+-bentonite was almost the same as respective sorption to original bentonite in solution containing TMA^+ and K^+. To further elucidate interaction of nitroaromatic compounds with mineral surface, the sorption of m-dinitrobenzene (m-DNB) and nitrobenzene to original bentonite in aqueous solution containing different electrolytes (i.e., KCl, NH4Cl, CaCl2 and Tetramethylammonium bromide (TMAB)) was studied. The sorption of m-DNB was greatly enhanced with the presence of KCl and NH4Cl, while little influence was observed with CaCl2 and TMAB, following the order of KCl 〉 NH4Cl 〉〉 TMAB, CaCl2, or DI water. For nitrobenzene, sorption enhancement only occurred at high nitrobenzene concentrations in the presence of KCl, and the solute equilibrium concentration at inflexion point was lowered with increasing KCl concentration. These sorption enhancements were significantly promoted with the increase of electrolyte concentration. The salting-out effect is insufficient to account for the sorption enhancement by original bentonite with increasing KCI or NH4Cl concentration. X-ray diffraction patterns of bentonite suspensions indicated that the sorption enhancement of m-DNB was attributed to the intercalation of K^+ or NH4^+ into bentonite interlayer and then dehydration with m-DNB to form inner-sphere complexes, which caused previously expanded bentonite interlayers to collapse in aqueous suspension, thus further enhanced the interaction of phenyl with siloxane surface. In comparison, the sorption enhancement of NB is attributed to the formation of outer-sphere complexes with K^+ at high solute-loadings (〉 20(0-400 mg/kg). The sorption of m-DNB to initially modified TMA^+-bentonite and K^+-bentonite was almost the same as respective sorption to original bentonite in solution containing TMA^+ and K^+.
出处 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2009年第8期1044-1052,共9页 环境科学学报(英文版)
基金 supported by the National Natural Science Foundation of China (No. 20577041) the New Century Educational Talents Plan of Chinese Education Ministry (No. NCET-05-0525) the Foundation for the Author of National Excellent Doctoral Dissertation of PR China(No.200765) the Program of Provincial Science and Technology of Zhejiang (No. 2006C33050)
关键词 SORPTION nitroaromatic compound BENTONITE cation type wastewater treatment sorption nitroaromatic compound bentonite cation type wastewater treatment
  • 相关文献

参考文献28

  • 1Boyd S A, Lee J F, Mortland M M, 1988. Attenuating organic contaminant mobility by soil modification. Nature, 333: 345-347.
  • 2Boyd S A, Sheng G Y, Teppen B J, Johnston C T, 2001. Mechanisms for the adsorption of substituted nitrobenzenes by smectite clays. Environmental Science and Technology, 35: 4227-4234.
  • 3Charles S, Teppen B J, Li H, Laird D A, Boyd S A, 2006. Exchangeable cation hydration properties strongly influence soil sorption of nitroaromatic compounds. Soil Science Society of America Journal, 70: 1470-1479.
  • 4Chen B L, Huang W H, Mao J ELv s F, 2008. Enhanced sorption of naphthalene and nitroaromatic compounds to bentonite by potassium and cetyltrimethylammonium cations. Journal of Hazardous Materials, 158:116-123.
  • 5Chen B L, Zhu L Z, Zhu J X, 2005. Configurations of the bentonite-sorbed myristylpyridinium cation and their influences on the uptake of organic compounds. Environmental Science and Technology, 39: 6093--6100.
  • 6Haderlein S B, Schwarzenbach R E 1993. Adsorption of substituted nitrobenzenes and nitrophenols to mineral surfaces. Environmental Science and Technology, 27:316-326.
  • 7Haderlein S B, Weissmahr K W, Schwarzenbach R P, 1996. Specific adsorption of nitroaromatic explosives and pesticides to clay minerals. Environmental Science and Technology, 30: 612-622.
  • 8Johnston C T, De Oliveira M F, Teppen B J, Sheng G Y, Boyd S A, 2001. Spectroscopic study of nitroaromaticsmectite sorption mechanisms. Environmental Science and Technology, 35: 4767--4772.
  • 9Li H, Pereira T R, Teppen B J, Laird D A, Johnston C T, Boyd S A, 2007. Ionic strength-induced formation of smectite quasicrystals enhances nitroaromatic compound sorption. Environmental Science and Technology, 41:1251-1256.
  • 10Li H, Teppen B J, Johnston C T, Boyd S A, 2004. Thermodynamics of nitroaromatic compound adsorption from water by smectite clay. Environmental Science and Technology, 38: 5433-5442.

同被引文献18

引证文献5

二级引证文献15

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部